Key Laboratory of Molecular Microbiology and Technology, Department of Microbiology, Ministry of Education, College of Life Science, Nankai University, Tianjin, 300071, People's Republic of China.
Tianjin University of Chinese Traditional Medicine, Tianjin, People's Republic of China.
Mycopathologia. 2019 Oct;184(5):573-583. doi: 10.1007/s11046-019-00372-5. Epub 2019 Aug 31.
Candida albicans is one of the most important fungal pathogens. Hyphal development is required for the virulence of this pathogen. Our previous study has revealed that Spf1, an ER P-type calcium pump, plays an important role in hyphal development. However, the detailed mechanisms by which this protein functions in this process remain to be investigated. In this study, we found that loss of Spf1 led to decreased growth biomass under the hypha-inducing condition, suggesting a role of this protein in maintaining hyphal growth rate. Actin staining further revealed that the spf1Δ/Δ mutant showed attenuated tip-localization of actin patches and the defect in transport of both the chitin synthase Chs3 and the hypha-related factor Hwp1, implying that Spf1 functions in polarized growth of the hyphae by regulating actin organization and consequent polarized transport of morphogenesis-associated factors. Moreover, deletion of SPF1 led to abnormal vacuolar morphology under the hypha-inducing condition, which may also contribute to the defect of hyphal development in the spf1Δ/Δ mutant. This study revealed the pleiotropic role of Spf1-regulated calcium homeostasis in controlling hyphal development in C. albicans.
白色念珠菌是最重要的真菌病原体之一。菌丝体发育是这种病原体毒力所必需的。我们之前的研究表明,Spf1(一种内质网 P 型钙泵)在菌丝体发育中起着重要作用。然而,该蛋白在这个过程中发挥作用的详细机制仍有待研究。在这项研究中,我们发现 Spf1 的缺失导致在菌丝诱导条件下生长生物量减少,表明该蛋白在维持菌丝生长速度方面发挥作用。肌动蛋白染色进一步表明,spf1Δ/Δ 突变体显示出肌动蛋白斑的尖端定位减弱,以及几丁质合成酶 Chs3 和菌丝相关因子 Hwp1 的运输缺陷,这表明 Spf1 通过调节肌动蛋白组织和随后的形态发生相关因子的极化运输,在菌丝的极化生长中发挥作用。此外,在菌丝诱导条件下,SPF1 的缺失导致液泡形态异常,这也可能导致 spf1Δ/Δ 突变体中菌丝发育的缺陷。这项研究揭示了 Spf1 调节的钙稳态在控制白色念珠菌菌丝体发育中的多效性作用。